首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 109 毫秒
1.
本研究以模式生物斑马鱼(Danio rerio)为对象,观察在不同浓度Cd Se/Zn S量子点(Cd Se/Zn S QDs)暴露下,斑马鱼胚胎形态发育、氧化应激以及金属硫蛋白MT基因和应激蛋白Hsp70基因表达变化情况.结果表明,Cd Se/Zn S QDs对斑马鱼胚胎72 hpf(hours post fertilization)的半致畸效应浓度(EC50)为316.994 nmol·L-1.QDs暴露影响了斑马鱼胚胎的死亡率、畸形率、孵化率、自主运动频率和体长,以及引起胚胎卵凝集,心包囊肿,脊椎弯曲等多种毒性效应;同时导致斑马鱼体内超氧化物歧化酶(SOD)活性变化以及丙二醛(MDA)含量增加.QDs还诱导斑马鱼MT基因和Hsp70基因表达上调,斑马鱼机体产生一系列自我保护反应来减轻QDs所造成的伤害.这表明:Cd Se/Zn S QDs对斑马鱼胚胎产生了毒性效应,其毒性可能与其核心Cd2+的释放、粒径大小以及氧化应激有关.  相似文献   

2.
四溴双酚A对斑马鱼胚胎体内外发育的毒性效应   总被引:4,自引:1,他引:3  
四溴双酚A(TetrabromobisphenolA,TBBPA)是广泛使用的溴阻燃剂,在环境中普遍存在.采用斑马鱼胚胎体内外微环境模拟实验,研究了TBBPA对斑马鱼(Danio rerio)胚胎体内外发育的影响.结果发现,斑马鱼胚胎直接暴露在TBBPA溶液中,会造成胚胎心包囊水肿、尾部延伸不全等畸形或使胚胎死亡;当TBBPA浓度高于1.6mg·L-1时,处理斑马鱼胚胎的致死率显著升高,与对照组有极显著差异(p<0.01),且致死效应主要发生在24h内.当TBBPA浓度为6.4mg·L-1时,斑马鱼胚胎在48h内全部死亡.在TBBPA浓度大于0.4mg·L-1的各组中,24h内斑马鱼胚胎在20s内的活动频率明显降低;当胚胎直接接触TBBPA48h,表现出的主要毒性效应为胚胎心包囊水肿,但胚胎的心率没观察到异常变化.当斑马鱼胚胎发育到72h时,TBBPA引起斑马鱼胚胎毒性的主要特征是心包囊水肿和脊柱畸形.另外,TBBPA处理后斑马鱼胚胎的孵化率和生存率均显著降低,这表明斑马鱼胚胎直接暴露在TBBPA污染的环境中,会出现明显的发育障碍,主要表现为心脏功能受损和致死效应,这些毒性特征有显著的剂量-效应关系.当成年亲代斑马鱼暴露在TBBPA溶液(1.5mg·L-1)中3~7d后,子代胚胎的发育表现出明显的毒性效应,其胚胎发育到24h和72h时的致死率均呈现一定的时间-效应关系;72h时的死亡率与对照组有极显著差异,子代胚胎的孵化率降低,但没有统计学差异;但子代胚胎的致畸率却显著升高,并呈现显著差异.研究结果表明,水体中残留的TBBPA对体内外斑马鱼胚胎的发育均有直接影响,对于鱼类的生殖和发育具有潜在的危害.  相似文献   

3.
五氯酚对稀有鮈鲫胚胎毒性效应研究   总被引:2,自引:0,他引:2       下载免费PDF全文
研究五氯酚(PCP)对稀有鮈鲫(Gobiocypris rarus)胚胎的致畸和毒性效应.以7.5,30,60,120,250μg/L5个浓度的PCP对0hpf(hpf,受精卵孵出时间)的稀有鮈鲫胚胎进行暴露染毒,同时设置空白对照组、二甲基亚砜溶剂对照组和雌二醇(EE2,2.5ng/L)阳性对照组.在立体显微镜下观察整个胚胎的发育过程,统计胚胎的孵化率、96hpf相对存活率和各时期的畸形率,并利用半定量RT-PCR检测胚胎中CYP1A基因和p53基因mRNA的表达.结果表明,PCP暴露能延迟稀有鮈鲫胚胎发育,并造成胚胎卵凝结、心包囊肿、脊柱弯曲等多种畸形甚至死亡.随着PCP暴露浓度的升高,稀有鮈鲫胚胎的孵化率和96hpf相对存活率降低,各时期的畸形率增加,并呈现一定的浓度效应.稀有鮈鲫胚胎CYP1A基因和p53基因mRNA表达被显著诱导,并随PCP浓度的升高而增加.PCP对稀有鮈鲫胚胎发育表现为显著的毒性效应.稀有鮈鲫胚胎孵化率、96hpf相对存活率、各时期畸形率及CYP1A基因和p53基因的诱导表达可以作为评价PCP毒性作用的敏感指标.  相似文献   

4.
本研究以稀有鮈鲫(Gobiocypris rarus)为对象,研究了不同浓度CdSe/ZnS量子点(QDs)暴露下,稀有鮈鲫胚胎发育过程中自主运动频率、内心率和体长的变化,以及利用体内超氧化物歧化酶(SOD)和丙二醛(MDA)作为毒性指标,反映CdSe/ZnS QDs暴露对稀有鮈鲫胚胎发育的氧化应激作用.结果显示:CdSe/ZnS QDs对稀有鮈鲫胚胎72 hpf(hours post fertilization)的半致死浓度(LC50)为319.629 nmol·L-1,96 hpf的半致畸浓度(EC50)为203.312 nmol·L-1.CdSe/ZnS QDs暴露不仅影响稀有鮈鲫胚胎死亡率、畸形率、自主运动频率、孵化时间和孵化率,而且使其内心率减缓、体长缩短,导致胚胎卵凝结,心包囊肿,出现脊椎弯曲等多种毒性现象.同时发现,CdSe/ZnS QDs暴露导致稀有鮈鲫体内MDA含量增加以及SOD活力的降低.这表明CdSe/ZnS QDs对稀有鮈鲫胚胎发育具有致畸、致死作用,而氧化应激可能是引起其胚胎致畸、致死的重要机制之一.  相似文献   

5.
6.
Many studies have investigated bioaccumulation and metabolism of polycyclic aromatic hydrocarbons (PAHs) in aquatic organisms. However, lack of studies investigated both processes simultaneously, and the interaction between these two processes is less understood so far. This study investigated the bioaccumulation kinetics of PAHs and metabolic enzyme activities, including total cytochrome P450 (CYPs) and total superoxide dismutase (T-SOD), in zebrafish. Mature zebrafish was exposed to the mixture of phenanthrene and anthracene under constant concentration maintained by passive dosing systems for 16 days. The results showed that PAH concentrations in zebrafish experienced a peak value after exposure for 1.5 days, and then decreased gradually. The bioaccumulation equilibrium was achieved after exposure for 12 days. Both of the uptake rate constants (ku) and the elimination rate constants (ke) decreased after the peak value. The variation of PAH concentrations and metabolic enzyme activities in zebrafish had an interactive relationship. CYPs and T-SOD activities increased initially with the increase of PAH concentrations, but decreased to the lowest state when PAH concentrations reached the peak value. When the bioaccumulation equilibrium of PAHs was achieved, CYPs and T-SOD activities also reached the steady state. In general, CYPs and T-SOD activities were activated after exposure to PAHs. The decrease of PAH concentrations in zebrafish after the peak value may be attributed to the great drop of ku and the variation of CYPs activities. This study suggests that an interactive relationship exists between bioaccumulation kinetics of PAHs and metabolic enzyme activities in aquatic organisms.  相似文献   

7.
根据鱼鳔发育的不同阶段,从受精后0 h(0 hours post fertilization, 0 hpf)开始对5个发育阶段(0 hpf~孵化前、0~120 hpf、0~168 hpf、孵化后~120 hpf、120~168 hpf)的斑马鱼进行nano-ZnO暴露实验,研究不同浓度的nano-ZnO对斑马鱼鱼鳔的影响.结果表明,nano-ZnO悬浮液中溶解的Zn~(2+)不是导致斑马鱼死亡和鱼鳔缺损的唯一或主要原因.nano-ZnO暴露浓度越高,斑马鱼的死亡率和鱼鳔缺损率越高,存在剂量-效应关系.15 mg·L~(-1) nano-ZnO可造成90%的斑马鱼鱼鳔缺损和死亡,10 mg·L~(-1) nano-ZnO可导致斑马鱼鱼鳔面积缩小70%.斑马鱼鱼鳔早期发育阶段(0~168 hpf)对nano-ZnO敏感度大小为:出芽阶段(0 hpf~孵化前)充气阶段(孵化后~120 hpf)充气完成阶段(120~168 hpf).斑马鱼鱼鳔的发育面积和发育时间也受nano-ZnO暴露染毒的影响而发生变化.斑马鱼死亡率和鱼鳔缺损率(鱼鳔发育)之间存在相关性(r=0.978,p0.01).这表明斑马鱼鱼鳔的发育缺损是造成斑马鱼胚胎死亡的主要原因之一,但nano-ZnO对斑马鱼鱼鳔的影响机理,尤其是对鱼鳔出芽阶段和充气阶段的致毒机理需要进一步研究.  相似文献   

8.
Perfluorooctane sulfonate(PFOS) and ZnO nanoparticles(nano-ZnO) are widely distributed in the environment.However,the potential toxicity of co-exposure to PFOS and nano-ZnO remains to be fully elucidated.The test investigated the effects of co-exposure to PFOS and nano-ZnO on the hypothalamic–pituitary–thyroid(HPT) axis in zebrafish.Zebrafish embryos were exposed to a combination of PFOS(0.2,0.4,0.8 mg/L) and nano-ZnO(50 mg/L)from their early stages of life(0–14 days).The whole-body content of TH and the expression of genes and proteins related to the HPT axis were analyzed.The co-exposure decreased the body length and increased the malformation rates compared with exposure to PFOS alone.Co-exposure also increased the triiodothyronine(T3) levels,whereas the thyroxine(T4)content remained unchanged.Compared with the exposure to PFOS alone,exposure to both PFOS(0.8 mg/L) and nano-ZnO(50 mg/L) significantly up-regulated the expression of corticotropin-releasing factor,sodium/iodidesymporter,iodothyronine deiodinases and thyroid receptors and significantly down-regulated the expression of thyroid-stimulating hormone,thyroglobulin(TG),transthyretin(TTR) and thyroid receptors.The protein expression levels of TG and TTR were also significantly down-regulated in the co-exposure groups.In addition,the expression of the thyroid peroxidase gene was unchanged in all groups.The results demonstrated that PFOS and nano-ZnO co-exposure could cause more serious thyroid-disrupting effects in zebrafish than exposure to PFOS alone.Our results also provide insight into the mechanism of disruption of the thyroid status by PFOS and nano-ZnO.  相似文献   

9.
双酚AF暴露对胚胎期和幼鱼期斑马鱼的毒性效应   总被引:1,自引:0,他引:1       下载免费PDF全文
为明确不同发育阶段的斑马鱼对BPAF(双酚AF)暴露的易感性,采用暴露试验法初步研究了BPAF对胚胎期和幼鱼期斑马鱼的发育毒性. 结果表明:①BPAF暴露可延缓胚胎期斑马鱼的发育和孵化,使其出现心包水肿、卵黄囊异常、心率下降、心脏搏动停止等症状. ②暴露96 h后,ρ(BPAF)为2.0、2.5、3.0 mg/L暴露组胚胎期斑马鱼的畸形率高达100%,暴露24 h致畸的EC50(半数效应浓度)为2.00 mg/L,暴露96 h的LC50(半数致死浓度)为1.84 mg/L. ③暴露72 h后,对照组幼鱼期斑马鱼鱼鳔发育缺陷率为0;除ρ(BPAF)为1.0 mg/L暴露组外,其余BPAF暴露组幼鱼期斑马鱼鱼鳔发育缺陷率为100%. ④随着暴露时间的延长以及中毒程度的加深,幼鱼期斑马鱼出现的中毒症状依次表现为心包水肿、卵黄囊水肿、背脊弯曲、心跳停止,暴露48和72 h时其心包水肿的EC50分别为1.76、1.56 mg/L,暴露96 h的LC50为1.77 mg/L. 胚胎期和幼鱼期斑马鱼对BPAF暴露响应的差异分析显示,幼鱼期斑马鱼对BPAF暴露的反应更为敏感,幼鱼期斑马鱼的心包水肿症状可作为BPAF毒性响应的最佳指标之一.   相似文献   

10.
Grass carp(Ctenopharyngodon idella) is one of the most important species in China.Decabromodiphenyl ethane(DBDPE) is a brominated flame retardant that has been used widely in industry, and has been observed to accumulate in the tissues of fish from South China. Evidence has shown that DBDPE is toxic to aquatic animals, but the molecular response has been unclear. MicroRNAs(miRNAs) are small noncoding and negative regulatory RNAs that are 20–24 nucleotides in length, which are involved in a wide range of biological processes. We took advantage of deep-sequencing techniques to accurately and comprehensively profile the kidney mi RNA expression of grass carp after 8 weeks of oral exposure to DBDPE. After mapping sequencing data to the genome and Expressed Sequence Tags(ESTs) of grass carp, we identified 493 miRNAs in the sequenced grass carp samples, which included 51 new miRNAs. The results indicated that 5 miRNAs were significantly down-regulated and 36 miRNAs were significantly up-regulated(FDR 0.001,1.5-fold change) after DBDPE exposure. Real-time quantitative PCR(RT-q PCR) was performed on 4 miRNAs from the two samples, and the sequencing and RT-q PCR data were consistent. This study provides the first comprehensive identification of grass carp miRNAs, and the first expression analysis of grass carp miRNAs following DBDPE exposure.The results indicated that miRNAs have potential for use as biomarkers.  相似文献   

11.
为探究氟对斑马鱼甲状腺内分泌功能的干扰效应,本研究以雌性斑马鱼成鱼为研究对象,分别以不同浓度氟(0、20、 40、80 mg·L~(-1))暴露45 d和90 d,对斑马鱼的生长发育指数进行测定,用组织学方法对斑马鱼甲状腺组织结构进行显微观察,用酶联免疫吸附法检测血浆中T3和T4激素水平,并用实时荧光定量PCR方法检测HPT轴上内分泌相关基因的表达.结果显示,与对照组相比,氟暴露组雌性斑马鱼的生长发育指数随着暴露浓度和时间的增加而呈下降趋势(p0.05);甲状腺组织病变程度随着氟暴露浓度的增大和时间的延长而加重;氟暴露45 d时,T3和T4水平呈升高趋势,90 d时,T4水平呈下降趋势且在80 mg·L~(-1)组下降显著(p0.05);氟暴露45 d时,40 mg·L~(-1)组除crh处,其他mRNA表达均显著下降(p0.05),80 mg·L~(-1)组除tg、nis、ttr外其他mRNA表达均显著下降(p0.05);暴露90 d时tg、dio1、dio2的mRNA表达水平在40 mg·L~(-1)和80 mg·L~(-1)组显著上升(p0.05),ugt1ab mRNA表达在80 mg·L~(-1)组显著下降(p0.05).综上,氟可通过影响雌性斑马鱼的生长发育、甲状腺组织结构、激素水平及HPT轴上内分泌相关基因的表达,从而对其甲状腺内分泌功能产生一定程度的干扰,进而影响机体的生长发育.本研究结果对水环境中氟的生态毒性效应及风险评估提供了理论资料.  相似文献   

12.
In recent years, with the wide applications and mineral exploitation of rare earth elements, their potential environmental and health effects have caused increasing public concern. Effect of rare earth elements La and Yb on the morphological and functional development of zebrafish embryos were studied. The embryos were exposed to La3+ or Yb3+ at 0, 0.01, 0.1, 0.3, 0.5 and 1.0 mmol/L, respectively. Early life stage parameters such as egg and embryo mortality, gastrula development, tail detachment, eyes, somite formation, circulatory system, pigmentation, malformations, hatching rate, length of larvae and mortality were investigated. The results showed La3+ and Yb3+ delayed zebrafish embryo and larval development, decreased survival and hatching rates, and caused tail malformation in a concentration-dependent way. Moreover, heavy rare-earth ytterbium led to more severe acute toxicity of zebrafish embryo than light rare-earth lanthanum.  相似文献   

13.
In order to reduce the level of transmission of diseases caused by bacteria and fungi, the development of antimicrobial additives for use in personal care, hygiene products, clothing and others has increased. Many of these additives are based on metals such as silver and titanium. The disposal of these products in the environment has raised concerns pertaining to their potential harmfulness for beneficial organisms. The objective of this study was to evaluate the influence of the shape, surface chemistry, size and carrier of three additives containing silver and one with titanium dioxide (TiO2) on microcrustacean survival. Daphnia magna was used as a bioindicator for acute exposure test in suspensions from 0.0001 to 10,000 ppm. Ceriodaphnia dubia was used for chronic test in TiO2 suspensions from 0.001 to 100 ppm. D. magna populations presented high susceptibility to all silver based additives, with 100% mortality after 24 hr of exposure. A different result was found in the acute experiments containing TiO2 suspensions, with mortality rates only after 48 hr of incubation. Even on acute and chronic tests, TiO2 did not reach a linear concentration-response versus mortality, with 1 ppm being more toxic than 10,000 ppm on acute test and 0.001 more toxic than 0.01 ppm on chronic assay. Silver based material toxicity was attributed to silver itself, and had no relation to either form (nano or ion) or carrier (silica, phosphate glass or bentonite). TiO2 demonstrated to have a low acute toxicity against D. magna.  相似文献   

14.
全氟辛烷磺酸(PFOS)对斑马鱼卵黄蛋白原mRNA水平的影响   总被引:3,自引:2,他引:1  
为了研究环境低剂量全氟辛烷磺酸(perfluorooctane sulfonate,PFOS)对水生生物的内分泌干扰效应和可能的作用机制,测定了PFOS对斑马鱼(Brachydanio rerio)肝脏中卵黄蛋白原(vitellogenin,VTG)mRNA水平的影响.将斑马鱼暴露于4个PFOS的环境低剂量浓度组(0.1、1、10、100μg.L-1)中进行21d毒性试验,收集肝脏样品,提取RNA,采用荧光定量PCR(qRT-PCR)分别检测VTG1和VTG3的mRNA水平.结果表明:①PFOS暴露引起雄性斑马鱼肝脏VTG1和VTG3 mRNA水平升高,VTG1 mRNA水平升高与剂量呈正相关,在100μg.L-1暴露浓度处与对照组呈现显著性差异;VTG3的mRNA水平变化与剂量呈倒U型曲线,呈现典型的毒物刺激荷尔蒙效应,在10和100μg.L-1暴露浓度处与对照组呈现显著性差异;②PFOS暴露引起雌性斑马鱼肝脏中VTG1 mRNA水平升高,在10μg.L-1暴露浓度处与对照组呈现显著性差异,但在高浓度(10和100μg.L-1)处试验结果误差较大;VTG3 mRNA水平只在10μg.L-1暴露浓度处升高,但相比于对照组均没有显著性差异.试验结果表明PFOS暴露对斑马鱼的内分泌干扰作用明显,其毒性作用机制可能是类雌激素效应,而肝脏中VTG1和VTG3mRNA水平可能作为PFOS内分泌干扰效应评价的敏感生物标志物,但VTG1和VTG3 mRNA水平的响应曲线呈现基因亚型和性别差异.  相似文献   

15.
We developed the T3-induced Xenopus metamorphosis assay, which is supposed to be able to sensitively detect thyroid hormone(TH) signaling disruption of chemicals. The present study aimed to validate the T3-induced Xenopus metamorphosis assay by re-evaluating the TH signaling antagonism of tetrabromobisphenol A(TBBPA), a known TH signaling disruptor. According to the assay we developed, Xenopus tadpoles at stage 52 were exposed to 10–500 nmol/L TBBPA in the presence of 1 nmol/L T3. After 96 hr of exposure, TBBPA in the range of 10–500 nmol/L was found to significantly inhibit T3-induced morphological changes of Xenopus tadpoles in a concentration-dependent manner in term of body weight and four morphological endpoints including head area(HA), mouth width(MW), unilateral brain width/brain length(ULBW/BL), and hind-limb length/snout-vent length(HLL/SVL).The results show that these endpoints we developed are sensitive for characterizing the antagonistic effects of TBBPA on T3-induced metamorphosis. Following a 24-hr exposure,we found that TBBPA antagonized expression of T3-induced TH-response genes in the tail,which is consistent with previous findings in the intestine. We propose that the tail can be used as an alternative tissue to the intestine for examining molecular endpoints for evaluating TH signaling disruption. In conclusion, our results demonstrate that the T3-induced Xenopus metamorphosis assay we developed is an ideal in vivo assay for detecting TH signaling disruption.  相似文献   

16.
Organic contaminants can be detected at low concentrations in drinking water, raising concerns for human health, particularly in reproduction. In this respect, we attempted to use the zebrafish as a bioindicator to detect the possible presence of these substances in drinking water, aiming to define the most relevant parameters to detect these substances, which particularly affect the development and reproduction of zebrafish. To this end, batches of 30 embryos with the chorion intact were cultured in drinking waters from different sources, throughout their full life-cycle up to 5 months, in 20 L tanks. Six replicates were performed in all water groups, with a total of 24 aquariums. Two generations (F0 and F1) were studied and the following parameters were tested: in the F0 generation, survival and abnormality rates evaluated at 5 dpf (days post-fertilization) and at 5 mpf (months post-fertilization), the onset of spawning and the fertility rate from 3 mpf to 5 mpf, and the sex ratio and underdeveloped specimens at 5 mpf. Furthermore, in the F0 offspring (F1), survival and abnormality rates were evaluated at 5 dpf and the hatching rate at 72 hpf. These results revealed that the hatching rate is the most sensitive parameter to distinguish different levels of effects between waters during the early life stages, whereas the rate of underdeveloped specimens is more suitable at later life stages. Regarding adult reproduction, fertility rate was the most sensitive parameter. The possible reversibility or accumulative nature of such effects will be studied in future work.  相似文献   

17.
叶婷  杨丹  李灿 《海洋环境科学》2018,37(6):857-863
为探讨邻苯二甲酸二(2-乙基己基)酯(DEHP)的代谢产物邻苯二甲酸单-2-乙基己酯(MEHP)对海水青鳉胚胎的内分泌干扰效应,本研究调查了海水青鳉胚胎受精后暴露于MEHP(0.01,0.1,和1 mg/L)直至胚胎发育晚期-受精后10 d(10 dpf),采用实时定量反转录聚合酶链反应(qRT-PCR)分析MEHP对内分泌干扰标志通路雌激素受体(ER)、过氧化物增殖激活受体(PPAR)通路和芳香化酶(CYP19)基因的影响。结果显示:MEHP对海水青鳉胚胎存活和孵化没有显著影响,而各MEHP处理组显著诱导了编码雌激素受体(ERα)和PPAR受体(PPARα和PPARγ)的基因表达水平,0.01和1 mg/L MEHP显著诱导了雌激素受体(ERγ)基因表达水平。MEHP暴露显著增加卵黄蛋白原(VTG)两个亚型-VTG1、VTG2,卵壳前体蛋白(Choriogenin,Chg)两个亚型-ChgH、ChgL,芳香化酶(CYP19)-CYP19a、CYP19b的基因表达水平。然而,MEHP暴露对海水青鳉胚胎编码雄激素受体的基因雄激素受体α亚型(androgen receptor α,ARα)的表达水平无显著影响。说明MEHP可通过上调芳香化酶CYP19的表达增加雄激素向雌激素的转化,增加的雌激素通过血液循环扩散进入靶组织和细胞结合雌激素受体ERs,导致ERs的上调(ERα和ERγ),使得雌激素受体激活、二聚化并结合大多数雌激素响应基因如VTG和Chg的雌激素响应元素(EREs),增加雌激素响应基因VTG和Chg的表达,增加VTG和Chg的合成从而产生内分泌干扰效应。  相似文献   

18.
The objective of this study was to understand toxicity of mixture of nanoparticles (NPs) (ZnO and TiO2) and their ions to Escherichia coli. Results indicated the decrease in percentage growth of E. coli with the increase in concentration of NPs both in single and mixture setups. Even a small concentration of 1 mg/L was observed to be significantly toxic to E. coli in binary mixture setup (exposure concentration: 1 mg/L ZnO and 1 mg/L TiO2; 21.15% decrease in plate count concentration with respect to control). Exposure of E. coli to mixture of NPs at 1000 mg/L (i.e., 1000 mg/L ZnO and 1000 mg/L TiO2) resulted in 99.63% decrease in plate count concentration with respect to control. Toxic effects of ions to E. coli were found to be lesser than their corresponding NPs. The percentage growth reduction was found to be 36% for binary mixture of zinc and titanium ions at the highest concentration (i.e., 803.0 mg/L Zn and 593.3 mg/L Ti where ion concentrations are equal to the Zn ions present in 1000 mg/L ZnO NP solution and Ti+ 4 ions present in 1000 mg/L TiO2 NP solution). Nature of mixture toxicity of the two NPs to E. coli was found to be antagonistic. The alkaline phosphatase (Alp) assay indicated that the maximum damage was observed when E. coli was exposed to 1000 mg/L of mixture of NPs. This study tries to fill the knowledge gap on information of toxicity of mixture of NPs to bacteria which has not been reported earlier.  相似文献   

19.
氯苯对斑马鱼胚胎发育和仔鱼的毒性效应研究   总被引:1,自引:0,他引:1  
选取健康的雌雄斑马鱼按1:1或1:2的比例进行交配产卵。采用静态法,以丙酮为助溶剂,分别用不同浓度的CB进行斑马鱼受精卵和刚平衡游动仔鱼的暴露试验,记录胚胎孵化数和胚胎、仔鱼畸形数以及仔鱼死亡数。不同浓度的CB可导致斑马鱼胚胎孵化率降低及孵出的仔鱼畸形率增加,且毒性呈现剂量-效应关系。当CB浓度高于0.88μg/L时,斑马鱼胚胎及其孵出的仔鱼畸形率开始增加;当CB为108.9μg/L时,暴露24 h的胚胎出现全致畸效应。能平衡游动的斑马仔鱼对CB的毒性也很敏感,24 h、72 h和96 h的LC50值分别为95.35、80.51和62.28μg/L;110.0μg/L CB使处理24 h的仔鱼全部死亡。较低浓度的CB就使斑马鱼胚胎发育畸形;其对仔鱼的毒性也很显著,达到一定浓度可使其死亡。  相似文献   

20.
采用斑马鱼胚胎发育技术方法研究高氯酸钠对斑马鱼胚胎的急性毒性效应,配制一系列高氯酸钠的浓度,对受精1h的胚胎进行染毒暴露,最后对斑马鱼胚胎的心率,孵化率,死亡率,畸形率进行统计分析。研究结果显示,高氯酸钠(NaClO4)浓度的增加,斑马鱼胚胎的心率和孵化率降低、死亡率和畸形率增加。斑马鱼48hpf的胚胎心率高浓度组比对照组下降了35%;72 h的孵化率由对照组的88%降低到高浓度组的36%;144 h的死亡率由对照组的5%增加到72%;144 h的畸形率由对照组的2%增加到91%,主要畸形表现为心包囊肿(PE),脊柱弯曲(AM),鱼鳔缺失(SBD)等。结果表明,高浓度的高氯酸钠(NaClO4)对斑马鱼胚胎发育有明显的剂量效应作用。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号